Claims
- 1. A system for estimating channel characteristics in a multicarrier transmission system comprising:
means for receiving a multicarrier signal; means for applying Fast Fourier transformations to carriers of said multicarrier signal; means for estimating channel characteristics of a multicarrier channel over which said multicarrier signal was transmitted using iterative processing; and means for decoding said transformed multicarrier signal.
- 2. The system according to claim 1, wherein said iterative processing further comprises:
means for determining if a block in a frame in the received signal is a training block; means for tentatively decoding said block of said received signal; means for calculating a tentative reference signal based on a previous training block; means for generating a tentative estimation of channel characteristics using said tentative reference signal; means for decoding said block of said received signal; means for calculating a reference signal based on said received block; means for generating an estimation of channel characteristics using said reference signal; means for incrementing the block number; means for determining if the end of said frame has been reached; means for accepting a next block of received signal if said end of said frame has not been reached; and means for iteratively performing the steps above.
- 3. The system according to claim 2, wherein said means for decoding is performed using
- 4. The system according to claim 2, wherein said means for calculating is performed using
- 5. The system according to claim 2, wherein said first means for generating is performed using
- 6. The system according to claim 2, wherein said second means for generating is performed using
- 7. The system according to claim 1, wherein said means for decoding further comprises:
means for demodulating said multicarrier received signal; means for combining said demodulated multicarrier signal using a maximum ratio combiner; and means for Viterbi decoding said combined signal.
- 8. The system according to claim 7, further comprising means for deinterleaving said combined signal if said combined signal was interleaved for transmission.
- 9. The system according to claim 2, wherein said means for decoding further comprises:
means for demodulating said multicarrier received signal; means for combining said demodulated multicarrier signal using a maximum ratio combiner; and means for Viterbi decoding said combined signal.
- 10. The system according to claim 9, further comprising means for deinterleaving said combined signal if said combined signal was interleaved for transmission.
- 11. The system according to claim 7, wherein said means for demodulating is performed concurrently for all signals of said multicarrier signal.
- 12. The system according to claim 9, wherein said means for demodulating is performed concurrently for all signals of said multicarrier signal.
- 13. The system according to claim 2, wherein said first means for generating is performed using
- 14. The system according to claim 2, wherein said second means for generating is performed using
- 15. The system according to claim 1, wherein Fast Fourier transformations are applied to each carrier of said multicarrier signal.
- 16. A system for estimating channel characteristics in a multicarrier transmission system comprising:
means for receiving a multicarrier signal; means for applying Fast Fourier transformations to carriers of said multicarrier signal; means for estimating channel characteristics of a multicarrier channel over which said multicarrier signal was transmitted using iterative backward processing, wherein said means for iterative backward processing further comprises:
means for determining if a block in a frame in the received signal is correct; means for tentatively decoding said block of said received signal; means for calculating a tentative reference signal based on a previous training block; means for generating a tentative estimation of channel characteristics using said tentative reference signal; means for decoding said block of said received signal; means for calculating a reference signal based on said received block; means for generating an estimation of channel characteristics using said reference signal; means for decrementing the block number; means for determining if a beginning of said frame has been reached; means for accepting a next block of received signal if said beginning of said frame has not been reached; means for iteratively performing the steps above; and means for decoding said transformed multicarrier signal.
- 17. The system according to claim 16, wherein said means for decoding is performed using
- 18. The system according to claim 16, wherein said means for calculating is performed using
- 19. The system according to claim 16, wherein said first means for generating is performed using
- 20. The system according to claim 16, wherein said second means for generating is performed using
- 21. The system according to claim 16, wherein said means for decoding further comprises:
means for demodulating said multicarrier received signal; means for combining said demodulated multicarrier signal using a maximum ratio combiner; and means for Viterbi decoding said combined signal.
- 22. The system according to claim 21, further comprising means for deinterleaving said combined signal if said combined signal was interleaved for transmission.
- 23. The system according to claim 21, wherein said means for demodulating is performed concurrently for all signals of said multicarrier signal.
- 24. The system according to claim 21, wherein said means for demodulating is performed concurrently for all signals of said multicarrier signal.
- 25. The system according to claim 16, wherein said means for generating is performed using
- 26. The system according to claim 16, wherein Fast Fourier transformations are applied to each carrier of said multicarrier signal.
- 27. A system for estimating channel characteristics in a multicarrier transmission system comprising:
means for receiving a multicarrier signal; means for applying Fast Fourier transformations to carriers of said multicarrier signal; means for estimating channel characteristics of a multicarrier channel over which said multicarrier signal was transmitted concurrently using iterative processing and iterative backward processing; and means for decoding said transformed multicarrier signal.
- 28. The system according to claim 27, wherein said means for iterative processing further comprises:
means for determining if a block in a frame in the received signal is a training block; means for tentatively decoding said block of said received signal; means for calculating a tentative reference signal based on a previous training block; means for generating a tentative estimation of channel characteristics using said tentative reference signal; means for decoding said block of said received signal; means for calculating a reference signal based on said received block; means for generating an estimation of channel characteristics using said reference signal; means for incrementing the block number; means for determining if the end of said frame has been reached; means for accepting a next block of received signal if said end of said frame has not been reached; and means for iteratively performing the steps above.
- 29. The system according to claim 27, wherein said means for interactive backward processing comprises:
means for determining if a block in a frame in the received signal is correct; means for tentatively decoding said block of said received signal; means for calculating a tentative reference signal based on a previous training block; means for generating a tentative estimation of channel characteristics using said tentative reference signal; means for decoding said block of said received signal; means for calculating a reference signal based on said received block; means for generating an estimation of channel characteristics using said reference signal; means for decrementing the block number; means for determining if the beginning of said frame has been reached; means for accepting a next block of received signal if said beginning of said frame has not been reached; and means for iteratively performing the steps above.
- 30. The system according to claim 27, wherein said means for decoding further comprises:
means for demodulating said multicarrier received signal; means for combining said demodulated multicarrier signal using a maximum ratio combiner; and means for Viterbi decoding said combined signal;
- 31. The system according to claim 30, further comprising the means for deinterleaving said combined signal if said combined signal was interleaved for transmission.
- 32. The system according to claim 30, wherein said means for demodulating is performed using QPSK techniques.
- 33. The system according to claim 7, wherein said means for demodulating is performed using QPSK techniques.
- 34. The system according to claim 9, wherein said means for demodulating is performed using QPSK techniques.
- 35. The system according to claim 21, wherein said means for demodulating is performed using QPSK techniques.
- 36. The system according to claim 27, wherein Fast Fourier transformations are applied to each carrier of said multicarrier signal.
- 37. A system for estimating channel characteristics in a multicarrier transmission system comprising:
a plurality of Fast Fourier transformers for transforming a received multicarrier signal from a frequency domain to a time domain; a channel estimator connected to said plurality of said Fast Fourier transformers; a plurality of demodulators configured for receiving a signal which is a sum of outputs of said Fast Fourier transformers and said channel estimator; a maximum ratio combiner connected to said plurality of said demodulators; and a Viterbi decoder connected to said maximum ratio combiner, said Viterbi decoder further connected to said channel estimator to provide feedback input to said channel estimator.
- 38. The system according to claim 37, wherein a deinterleaver is interposed between said maximum ratio combiner and said Viterbi decoder, if an interleaver was used in transmitting said multicarrier signal.
- 39. The system according to claim 37, wherein said demodulators are QPSK.
Parent Case Info
[0001] This application claims the benefit of priority of Provisional Application No. 60/241,195, filed on Oct. 19, 2000, and of Provisional Application No. 60/180,799, filed on Feb. 7, 2000, and is related by subject matter to U.S. patent application Ser. No. XX/XXX,XXX filed Feb. 1, 2001, entitled “Method for Near Optimal Joint Channel Estimation and Data Detection for COFDM Systems,” by the inventors of the present application filed concurrently herewith.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60241195 |
Oct 2000 |
US |
|
60180799 |
Feb 2000 |
US |